• DocumentCode
    1787647
  • Title

    Envelope only TDOA estimation for sensor network self calibration

  • Author

    Ohev Zion, Dan ; Messer, Hagit

  • Author_Institution
    Sch. of Electr. Eng., Tel Aviv Univ., Tel Aviv, Israel
  • fYear
    2014
  • fDate
    22-25 June 2014
  • Firstpage
    229
  • Lastpage
    232
  • Abstract
    Self localization of nodes in wireless sensor networks (WSN) attracts wide interest in the past few years. The main challenge is to adopt calibration algorithms to the low-power/ low-bandwidth/ low-cost constrains on each sensor in the network. In this paper we present a novel approach, in which position-known anchors transmit special calibration signals simultaneously. Each node measures only the received signal strength (RSSI), i.e. envelope of the sum of received signals, and estimates time difference of arrivals (TDOA) of the signals. Two or more TDOA measurements allow the node to estimate its own position in the WSN. Based on an analysis of the appropriate Cramer Rao Lower Bound (CRLB) on the TDOA estimates, we suggest the choice of calibrating signals which provide optimal performance. The theoretical results are supported by simulations of the Maximum Likelihood (ML) estimators and numerical evaluation of the CRLB for a specific scenario of interest.
  • Keywords
    calibration; maximum likelihood estimation; numerical analysis; time-of-arrival estimation; wireless sensor networks; CRLB; Cramer Rao lower bound; ML estimators; RSSI; WSN; calibration signals; envelope only TDOA estimation; low-bandwidth constrains; low-cost constrains; low-power constrains; maximum likelihood estimators; numerical evaluation; received signal strength; self calibration; self localization; time difference of arrivals measurements; wireless sensor networks; Conferences; Position measurement; Wireless sensor networks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Sensor Array and Multichannel Signal Processing Workshop (SAM), 2014 IEEE 8th
  • Conference_Location
    A Coruna
  • Type

    conf

  • DOI
    10.1109/SAM.2014.6882382
  • Filename
    6882382